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HOW METALS ACT UNDER STRESS |
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HOW METALS REACT WITH ENVIRONMENT |
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ELECTROMAGNETIC CHARACTERISTICS |
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MASS, DENSITY, ETC property? |
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CHANGE OF DIMENSION/ORIGINAL DIMENSION |
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ABILITY TO DISTORT WITHOUT BREAKING |
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RETURN TO ORIGINAL DIMENSIONS |
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PERMANENTLY DEFORM W/O BREAKING |
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FORMABLE INTO USEFUL SHAPES |
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STRESS/STRAIN (YOUNG’S) |
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(LATERIAL STRAIN/AXIAL STRAIN)(-1) |
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SLOW PLASTIC FLOW OVER TIME |
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Strain is proportional to Stress which means a straight line graph |
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Beyond this point permanent deformation takes place. |
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Strain increases with no increase in stress |
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Point where a change in x-sectional are occurs (necking) |
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LITTLE DEFORMATION BEFORE FRACTURE |
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GREAT DEFORMATION BEFORE FRACTURE |
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BASICALLY SAME AS TOUGHNESS |
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types of tensile failures |
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CAUSED BY INCONSISTANCIES IN THE ATOMIC COMPOSITION OF THE METAL |
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RESIDUAL STRESS BY PROCESSING |
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STRESS CORROSION CRACKING. |
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ABILITY OF A METAL TO KEEP CURRENT FROM GOING TO GROUND. |
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ABILITY TO MAGNETIZE A METAL, FERROUS METALS HIGH, NONFERROUS LOW. |
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AMOUNT OF HEAT NEEDED TO RAISE A UNIT MASS ONE DEGREE |
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